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Post-Pyrolytic Carbon as a Phase Change Materials (PCMs) Carrier for Application in Building Materials

机译:后热解碳作为相变材料(PCM)载体在建筑材料中的应用

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摘要

This article covers new application for char as a carrier of phase-change materials (PCM) that could be used as an additive to building materials. Being composed of bio-char and PCM, the granulate successfully competes with more expensive commercial materials of this type, such as Micronal PCM. As a PCM carrier, char that was obtained from the pyrolysis of chestnut fruit (Aesculus hippocastanum) with different absorbances of the model phase-change material, Rubitherm RT22, was tested. DSC analysis elucidated several thermal properties (such as enthalpy, phase transition temperature, and temperature peak) of those mixtures and the results were compared with a commercial equivalent, Micronal DS 5040 X. Comparative research, approximating realistic conditions, were also performed by cooling and heating samples in a form of coatings that were made from chars with different content of RT22. These results indicated that the use of char as a PCM carrier was not only possible, but also beneficial from a thermodynamic point of view and it could serve as an alternative to commercial products. In this case, adsorption RT22 into char allowed for temperature stabilization comparable to Micronal DS 5040 X with ease of use as well as the economic advantages of being very low cost to produce due to microencapsulation. Other advantage of the proposed solution is related with the application of char obtained from waste biomass pyrolysis as a PCM carrier, and using this product in building construction to improve thermal comfort and increase energy efficiency.
机译:本文介绍了炭作为相变材料(PCM)载体的新应用,可将其用作建筑材料的添加剂。由生物炭和PCM组成的颗粒成功地与更昂贵的此类商业材料竞争,例如Micronal PCM。作为PCM载体,测试了由板栗果实(欧洲七叶树)的热解获得的炭,该炭具有不同吸光度的模型相变材料Rubitherm RT22。 DSC分析阐明了这些混合物的几种热性质(例如焓,相变温度和温度峰),并将结果与​​商业上的等效产品Micronal DS 5040 X进行了比较。以具有不同含量的RT22的炭制成的涂层形式加热样品。这些结果表明,将炭用作PCM载体不仅是可行的,而且从热力学角度来看也是有益的,并且可以用作商业产品的替代品。在这种情况下,将RT22吸附到炭中的温度稳定度可与Micronal DS 5040 X媲美,并且易于使用,并且具有经济优势,由于微囊封装的生产成本非常低。所提出的解决方案的其他优点与将从废生物质热解获得的焦炭用作PCM载体有关,并在建筑结构中使用该产品以改善热舒适性并提高能源效率。

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